U. Wieser, U. Kunze, et al.
Physica E: Low-Dimensional Systems and Nanostructures
The epitaxy of Cu on Ag{001} is studied by qualitative and quantitative low-energy electron diffraction (LEED) and by angle-resolved photoemission. LEED indicates that ultrathin (two- to three-atomic-layer) films have a limited amount of long-range order, and the ordered component has interlayer spacings of 1.45±0.06, which compares well with the theoretically determined cubic lattice constant 2.87±0.06 of a metastable body-centered-cubic (bcc) modification of Cu. Thicker (10- to 12-layer) films have almost no long-range order, and photoemission indicates that regions of bcc and fcc Cu coexist amid large amounts of defects. © 1991 The American Physical Society.
U. Wieser, U. Kunze, et al.
Physica E: Low-Dimensional Systems and Nanostructures
Sung Ho Kim, Oun-Ho Park, et al.
Small
H.D. Dulman, R.H. Pantell, et al.
Physical Review B
Ellen J. Yoffa, David Adler
Physical Review B